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Comprehensive error analysis of ultra-wideband direct conversion receivers

机译:超宽带直接转换接收机的综合误差分析

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In this contribution, the direct conversion receiver (DCR) has been revisited and its properties have thoroughly been studied in detail. Contrary to common practice, our main interest is focused on the investigation of DCR performance degradation in conjunction with the processing of ultra-wideband FDM-signals. To this end, all potential DCR error sources have been identified and introduced into a comprehensive error model. This model encompasses delay, gain and phase errors, DC-offsets, bidirectional crosstalk between the input ports of the down-converters and, eventually, quantisation and clipping of the analogue-to-digital interface (ADI). For all of these error sources an exact error analysis has been carried out and, in addition, compact and conveniently applicable formulae and design charts are presented for the evaluation of the isolated impact of each of the various error contributions. Furthermore, a typical error scenario taken from an ultra-wideband application in satellite communications has been used to demonstrate the overall DCR performance degradation as a result of the combination of the most important error contributions. For this application, the major degradations are caused by delay errors that are most pronounced in edge channels, DC-offsets that, however, heavily impair the channel centred about zero frequency only, and gain errors.
机译:在此贡献中,直接转换接收器(DCR)已被重新研究,并且对其性能进行了详尽的详细研究。与通常的做法相反,我们的主要兴趣集中在研究DCR性能下降以及超宽带FDM信号处理方面。为此,已识别出所有潜在的DCR错误源并将其引入到综合错误模型中。该模型包括延迟,增益和相位误差,DC偏移,下变频器输入端口之间的双向串扰以及最终的模数接口(ADI)的量化和削波。对于所有这些错误源,都进行了精确的错误分析,此外,还提供了紧凑且方便使用的公式和设计图表,用于评估各种错误贡献中的每一个的孤立影响。此外,从卫星通信的超宽带应用中提取的典型错误场景已被用来证明由于最重要的错误贡献的组合而导致的整体DCR性能下降。对于此应用,主要的降级是由延迟误差引起的,该误差在边缘通道中最明显,而直流偏移会严重损害仅以零频率为中心的通道,并造成增益误差。

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